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FIGURE 2. Asterina mallotii. A. Infected leaf. B. Mycelial colony. C. Thyriothecium. D. Asci. E. Ascospores. F. Conidia. G. Mycelial colony with thyriothecia. H. Ascus. I. Ascospores. J in New teleomorphic and anamorphic taxa of Asterinaceous black mildew from Western coast of India
FIGURE 2. Asterina mallotii. A. Infected leaf. B. Mycelial colony. C. Thyriothecium. D. Asci. E. Ascospores. F. Conidia. G. Mycelial colony with thyriothecia. H. Ascus. I. Ascospores. J. Conidia. Illustrated by Pratik D. Natekar.
FIGURE 1. Asteridiella leeicola. A. Infected leaf. B. Mycelial colony. C. Appressoriate mycelium. D. Phialides. E. Perithecia. F in Two new records of Meliolaceous black mildew fungi from India
FIGURE 1. Asteridiella leeicola. A. Infected leaf. B. Mycelial colony. C. Appressoriate mycelium. D. Phialides. E. Perithecia. F. Ascospores.
FIGURE 6 in Plant collecting in São Tomé and Príncipe-collectors and their itineraries during the colonial period
FIGURE 6. São Tomé. A. Contador River valley, near Cascata, in 2019. B. View from the summit of Pico de São Tomé, in 2010. Photographs by R. Lima.
FIGURE 5 in Plant collecting in São Tomé and Príncipe-collectors and their itineraries during the colonial period
FIGURE 5. São Tomé. A. A colonial timber house on the roça Nova Moca in 2010. B. Ruin of a plantation house on Trás-os-Montes in 2009. C. Southern view from the rim of Lagoa Amélia, showing the precipitous nature of the landscape in the centre of the island; photograph taken in 2009. The area shown is probably immediately west of the vista captured in a photograph taken by Arthur Exell in 1932 and reproduced in Figueiredo & Smith (2020b: Fig. 2). Photographs by R. Lima.
FIGURE 3 in Plant collecting in São Tomé and Príncipe-collectors and their itineraries during the colonial period
FIGURE 3. Early collections from Príncipe. A. Lamprotornis ornatus (Daudin 1800: 309), a bird endemic to Príncipe that was illustrated by Levaillant (1799: 144–145, tab. 86). B. Asplenium emarginatum Palisot-Beauvois (1808: 6) that, according to the author of the name, was collected in the mountains of Príncipe. A and B reproduced from the Biodiversity Heritage Library.
FIGURE 2 in Plant collecting in São Tomé and Príncipe-collectors and their itineraries during the colonial period
FIGURE 2. Príncipe. Locality names are written in grey and plantation names (roças) in maroon. The circles for roças mark the location of the plantation house. Elevation ranges: 0–500 m in light yellow; 500–948 m in dark yellow.
FIGURE 1 in Plant collecting in São Tomé and Príncipe-collectors and their itineraries during the colonial period
FIGURE 1. São Tomé. Locality names are written in grey and plantation names (roças) in maroon. The circles for roças mark the location of the plantation house. Elevation ranges: 0–1000 m in light yellow; 1000–1500 m in medium yellow; 1500–2024 m in dark yellow.
FIGURA 1 in Nidificação Colonial De Butorides Striata (Linnaeus, 1758) (Ciconiiformes: Ardeidae) Em Área Alagável No Município De Porto Esperidião, Mato Grosso
FIGURA 1: Número de ninhos ativos em cada período (ovos e ninhegos), em área alagável, município de Porto Esperidião, na estação reprodutiva de 2010.
Fig. 1 in Cytoplasmic UV-R Absorption in an Integumentary Matrix (tunic) of Photosymbiotic Ascidian Colonies
Fig. 1. Transmittance (%) of 250-800 nm light for the bandpass filters U340 (thick line) and CT330/20 (thin line) measured with a spectrophotometer Genesis 10S UV-Vis.
Fig. 5 in Cytoplasmic UV-R Absorption in an Integumentary Matrix (tunic) of Photosymbiotic Ascidian Colonies
Fig. 5. Tunic cells in the surface tunic of Diplosoma virens. A, Bladder tunic cells. B, Tunic net cells (= myocyte sensu Mackie and Singla, 1987). C-E, Other types of tunic cells with vacuoles containing electron-dense materials or clear vesicles. Scale bars: 5 µm in A, 2 µm in B-E.
Fig. 4. A in Cytoplasmic UV-R Absorption in an Integumentary Matrix (tunic) of Photosymbiotic Ascidian Colonies
Fig. 4. A, Histological cross-section of the Diplosoma virens colony showing surface tunic (su) and middle layer (md). B and C, UV images of the surface tunic of D. virens (band-pass filter: U340). D and E, a pair of UV images of the surface tunic of D. simile (band-pass filter: U340 for D, U340 + CT330/20 for E). Arrows indicate some cell-like objects absorbing UV-R. Arrowhead in C indicates Prochloron cells. bl, tunic bladder cell; bs, branchial sac; cc, cloacal cavity; st, stomach. Scale bars: 100 µm in A, 50 µm in B-E.
Fig. 3 in Cytoplasmic UV-R Absorption in an Integumentary Matrix (tunic) of Photosymbiotic Ascidian Colonies
Fig. 3. Pair images of cross-sections of Diplosoma virens (A, B) and D. simile (C, D) observed with an oblique epi-illumination of white- LED (A, C) and a transmission light filtered with U340 (B, D). The colonies have a three-layer structure: surface tunic (su), middle layer (md), and basal tunic (ba). Rectangles in A and B indicate an aggregate of pigmentary tunic cells. Green areas are cloacal cavities filled with Prochloron cells. em, embryo; fe, feces in rectum; os, oral siphon; st, stomach. Scale bars = 0.5 mm.
Fig. 2 in Cytoplasmic UV-R Absorption in an Integumentary Matrix (tunic) of Photosymbiotic Ascidian Colonies
Fig. 2. Absorption spectra of the surface tunic of Diplosoma virens (A) and D. simile (B). Spectra from four specimens are shown for each species. A prominent absorption peak is present at approximately 325 nm in each spectrum.
Gro Cell Colony Image Dataset
<p>Gro Cell Colony Image Dataset</p> <p>The Gro cell colony image dataset is a collection of images featuring bacterial colonies with distinct spatial and spatiotemporal patterns. These images are derived from the <a href="https://github.com/AI-UDP/GRO63">Gro</a> software and are categorized into four primary patterns:</p> <p>1. Bullseye: A pattern characterized by concentric circles or rings.<br>2. Sun: A pattern resembling the radial arrangement of sunburst-like structures.<br>3. Autonomous Bioreactor: A pattern indicative of self-organizing structures typically found in bioreactor environments.<br>4. Repressilator: A pattern demonstrating the behavior of a synthetic gene regulatory network known as the repressilator.</p> <p>This dataset is valuable for studying and analyzing the growth and behavior of bacterial colonies in various controlled environments.</p>
FIGURE 1. Aspergillus fuscicans. Colonies 7 d, 25 in Aspergillus fuscicans (Aspergillaceae, Eurotiales), a new species in section Usti from Argentinean semi-arid soil
FIGURE 1. Aspergillus fuscicans. Colonies 7 d, 25 ºC. A. CYA. B. Reverse. C. MEA. C´. Colonies 30 d, 25 ºC. D–F. Conidiophores and conidia. G. Conidia. H–I. Hülle cells. Bars D–E, H–I = 20 μm, F–G = 10 μm.
How the past creates the present: reviewing the foundational roles of colonialism and systemic racism and their modern manifestations in paleontology
<p><span><span>This talk was delivered by Dr. Pedro Monarrez on March 26th, 2024. </span></span></p> <p><span><span>Dr. Monarrez is the Recruitment, Outreach, Diversity, Equity, Inclusion (RODEI) coordinator in the Department of Earth, Planetary, and Space Sciences at UCLA. His research investigates the biological processes that drive evolutionary patterns of marine organisms across geologic time and the role that the environment has played in these processes. He also studies the variation and reconciliation of local and regional expressions of global macroevolutionary patterns and perturbations, such as mass extinctions. </span></span></p> <p><span><span>This talk was hosted by the Ethical Open Science research coordination network For more information visit: </span><span><a href="https://www.youtube.com/redirect?event=video_description&redir_token=QUFFLUhqbTBmTEsxNkotcDdpQ1N2azVBcXBKM1E5YVZLQXxBQ3Jtc0ttV2NQb29UUVcxRnRkSkFCWXRMNEc2ZXdaeHpES0s5ZzZDbUdiMHNsLTd3QWc0c0FNZl9oODAtNkFWUlJZY3JnZlpBaFhxdVhzeXdsV3JBYWRMRlpsbTFFTjdKNHNhekVuaW9SeWpsSVl5OEhoeDZTYw&q=https%3A%2F%2Feos-rcn.github.io%2Fweb%2Fhome&v=DB-87ZbdSnE" target="_blank" rel="nofollow noopener">https://eos-rcn.github.io/web/home</a></span></span></p> <div></div> <div> <div> <div></div> </div> </div>
FIGURE 2. Alternaria hedjaroudei. a-d, Colonies after 7 in Morphological and molecular identification of Alternaria hedjaroudei sp. nov., a new species in section Panax from Iran
FIGURE 2. Alternaria hedjaroudei. a-d, Colonies after 7 days on PDA (a), PCA (b), HA (c), and V8–A (d). e–f, Sporulation pattern. g–l, Primary conidiophores. m–o, Secondary conidiophores. p–z, Conidia. Scale bars 25 µm.
Figure 2 in A treetop diner: camera trapping reveals novel arboreal foraging by fishing cats on colonial nesting birds in Bangladesh
Figure 2: Photo sequence of the arboreal predatory behaviour of the fishing cat captured on camera traps in northeast Bangladesh arranged in a clockwise sequence. (A–F) The first event on 03 August, 2022. (G–L) The second event on 02 October, 2022 (for descriptions see Table 1).
Figure 1 in A treetop diner: camera trapping reveals novel arboreal foraging by fishing cats on colonial nesting birds in Bangladesh
Figure 1: Location of the bird colony where the arboreal predatory behaviour of the fishing cat was captured on camera traps in northeast Bangladesh. (A) Fishing cat range in Bangladesh. (B) Northeast Bangladesh. (C) The Indian Oak/Hijal tree. Red circles denote the placement of the camera traps. The range map in Bangladesh is adapted from Mukherjee et al. (2016).
Bee colony information northern Italy
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.